In recent years,global warming caused by emission of CO2has attracted considerable attention from the public.Although the measurements from AIRS,GOSAT,SCIAMACHY and IASI have been frequently used to derive atmospheric...In recent years,global warming caused by emission of CO2has attracted considerable attention from the public.Although the measurements from AIRS,GOSAT,SCIAMACHY and IASI have been frequently used to derive atmospheric CO2concentration,comprehensive quantification of the differences among these CO2products is still not fully investigated yet.In this paper,a series of strategies have been proposed to allow the CO2products from different instruments to be physically inter-comparable.Based on this,these CO2products are inter-compared in terms of magnitude and their spatiotemporal distributions.The results reveal that the correlations among these CO2products are relatively weak,and some discrepancies are detected in terms of the CO2spatiotemporal characteristics,demonstrating more efforts should be made in the future to improve the retrievals of CO2.Their spatial coverage differences reflected in this study imply the great necessity to generate consistent products with improved spatial and temporal continuities by combining these CO2measurements.展开更多
Microarray technology has been proved to be greatly helpful for biomedical and biological diagnosis. And the evaluation of its biological applications lies in the detection sensitivity, which requires high intensity a...Microarray technology has been proved to be greatly helpful for biomedical and biological diagnosis. And the evaluation of its biological applications lies in the detection sensitivity, which requires high intensity and stability of the signal. Recently, several nanomaterials, especially semiconductor nanomaterials, due to their excellent fluorescence properties, have been widely used to construct microarrays for biosensors. Here, we presented an approach for constructing CdSe/ZnS quantum dot (QD) microarray in microfluidic channels on a glass slide by photolithography. The conditions for immobilizing stable and uniform QD microarray on the glass slide were optimized. Several types of QD microarrays with different emission wavelengths and modified groups were constructed using silanization and lithography technology. Based on the fluorescence quenching effect of Cu2+ on QDs, the microfluidic chip with QD microarray was applied for the determination of Cu2+. 1 nmol/L Cu2+ could be detected by this method.展开更多
基金supported by the Strategic Priority Research Program (XDA05040402)the CAS/SAFEA International Partnership Program for Creative Research Teams (KZZD-EW-TZ-09)
文摘In recent years,global warming caused by emission of CO2has attracted considerable attention from the public.Although the measurements from AIRS,GOSAT,SCIAMACHY and IASI have been frequently used to derive atmospheric CO2concentration,comprehensive quantification of the differences among these CO2products is still not fully investigated yet.In this paper,a series of strategies have been proposed to allow the CO2products from different instruments to be physically inter-comparable.Based on this,these CO2products are inter-compared in terms of magnitude and their spatiotemporal distributions.The results reveal that the correlations among these CO2products are relatively weak,and some discrepancies are detected in terms of the CO2spatiotemporal characteristics,demonstrating more efforts should be made in the future to improve the retrievals of CO2.Their spatial coverage differences reflected in this study imply the great necessity to generate consistent products with improved spatial and temporal continuities by combining these CO2measurements.
基金supported by the National Basic Research Program of China (2011CB933600)the Science Fund for Creative Research Groups (20921062)+1 种基金the National Natural Science Foundation of China (21175100)the Program for New Century Excellent Talents in University (NCET-10-0656)
文摘Microarray technology has been proved to be greatly helpful for biomedical and biological diagnosis. And the evaluation of its biological applications lies in the detection sensitivity, which requires high intensity and stability of the signal. Recently, several nanomaterials, especially semiconductor nanomaterials, due to their excellent fluorescence properties, have been widely used to construct microarrays for biosensors. Here, we presented an approach for constructing CdSe/ZnS quantum dot (QD) microarray in microfluidic channels on a glass slide by photolithography. The conditions for immobilizing stable and uniform QD microarray on the glass slide were optimized. Several types of QD microarrays with different emission wavelengths and modified groups were constructed using silanization and lithography technology. Based on the fluorescence quenching effect of Cu2+ on QDs, the microfluidic chip with QD microarray was applied for the determination of Cu2+. 1 nmol/L Cu2+ could be detected by this method.